首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A Low-Noise Digital-to-Frequency Converter Based on Injection-Locked Ring Oscillator and Rotated Phase Selection for Fractional- $N$ Frequency Synthesis
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A Low-Noise Digital-to-Frequency Converter Based on Injection-Locked Ring Oscillator and Rotated Phase Selection for Fractional- $N$ Frequency Synthesis

机译:基于注射锁定环形振荡器的低噪声数模转换器和分数的旋转相位选择 - <内联公式> $ n $ 频率合成

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This paper proposes a low-noise digital-to-frequency converter (DFC) for fractional-N frequency synthesis. The DFC first employs a subharmonic injection-locked ring oscillator (ILRO) to generate low phase noise, high-frequency fixed reference from a crystal oscillator (XO). Delta Sigma modulator (Delta Sigma M) and accumulator are then applied to perform phase randomization and rotation around the multiphase outputs of the ILRO. This modulates the output frequency, while the rotation ensuring the range and linearity of the DFC. Meanwhile, clocking the Delta Sigma M at high frequency greatly suppresses the quantization noise, enabling a wide loop bandwidth for the subsequent phase-locked loop stage. Implemented in UMC CMOS 65-nm technology, the proposed DFC occupies an area of 0.257 mm(2), and is capable of generating frequencies from 390 to 640 MHz with resolution finer than 0.3 kHz. The in-band phase noise is lower than -120 dBc/Hz at 100 kHz, tracking well with the noise performance of the XO. The shaped high-frequency quantization noise only appears beyond 20-MHz frequency offset.
机译:本文提出了用于分数-N频率合成的低噪声数码转换器(DFC)。 DFC首先采用子发声注射锁定的环形振荡器(ILRO),以产生低相位噪声,从晶体振荡器(XO)产生低频固定参考。然后应用Delta Sigma调制器(Delta Sigma M)和累加器以在ILRO的多相输出周围执行相位随机化和旋转。这会调制输出频率,而旋转可确保DFC的范围和线性。同时,在高频时钟达到ΔIGMAm大大抑制了量化噪声,从而为后续锁相环级实现了宽环带宽。在UMC CMOS 65-NM技术中实现,所提出的DFC占地面积为0.257mm(2),并且能够通过比0.3kHz更精细地从390到640MHz产生频率。带内相位噪声低于-120 dBc / Hz,在100 kHz,跟踪XO的噪声性能。成形的高频量化噪声仅出现超过20-MHz的频率偏移量。

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